EP2236765A2

Cooling arrangement for a turbine engine component

Abstract

An example turbine component cooling arrangement includes a film plate (86) having a plurality of film channels (82) extending from film channel entrances (98) on a first side of the film plate (86) to corresponding film channel exits (94) on an opposing second side of the film plate (86). The arrangement also includes an impingement plate establishing a plurality of impingement channels. The impingement plate (78) is spaced a distance from the film plate (86). The plurality of impingement channels (74) are configured to direct a fluid across the distance to contact the film plate (86) between adjacent ones of the film channel entrances (98). In one example, the distance from the film plate (86) to the impingement plate (78) is between two and four times more than diameter of one of the impingement channels (74).

EP2236765A2, drawing sheet 1
Sheet 1 of 4

Term

3.4 yearsto projected expiry

Projected expiry 10 February 2030, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 12 independent, 3 dependent

  1. 1
    A turbine component cooling arrangement, comprising:a film plate (86) having a plurality of film channels (82) extending from film channel entrances (98) on a first side of the film plate (86) to corresponding film channel exits (94) on an opposing second side of the film plate (86);and an impingement plate (78) establishing a plurality of impingement channels (74) and spaced a distance from the film plate (86), wherein the plurality of impingement channels (74) are configured to direct a fluid across the distance to contact the film plate (86) between adjacent ones of the film channel entrances (98).
  2. 2
    A cooling arrangement for a turbine component (58), comprising:a turbine component (58) having a film cooling portion and an impingement cooling portion spaced a distance from the film cooling portion, the film cooling portion establishing a film channel array (128) having a plurality of film channels (82) each extending along a film channel axis from a film channel entrance (98) on a first side of the film cooling portion to a film channel exit (102) on an opposing second side of the film cooling portion, the impingement cooling portion establishing an impingement cooling array (106) having a plurality of impingement channels (74) each extending along an impingement axis from an impingement channel entrance (90) on a first side of the impingement cooling portion to an impingement channel exit (94) on an opposing second side of the impingement cooling portion, wherein the film channel array (106) is staggered relative to the impingement cooling array (128).
  3. 4
    The cooling arrangement of any preceding claim, wherein the distance is between two and four times greater, for example about three times greater, than a diameter of individual ones of the plurality of impingement channels (74).
  4. 5
    The cooling arrangement of any preceding claim, wherein the impingement channels (74) have a circle-shaped cross section and the film channels (82) have an oval-shaped cross section.
  5. 6
    The cooling arrangement of any preceding claim, wherein the impingement channels (74) extend along an axis that is perpendicular to a surrounding surface of the impingement plate (78) or impingement cooling portion.
  6. 8
    The turbine component cooling arrangement of any preceding claim, wherein the plurality of film channels (82) and/or impingement channels (74) are distributed evenly throughout the film plate (86).
  7. 9
    The cooling arrangement of any preceding claim, wherein the impingement channel axes extend between the film channel entrances (98).
  8. 10
    The cooling arrangement of any preceding claim, wherein the impingement channel axes are misaligned with the film channel entrances (98).
  9. 11
    The cooling arrangement of any preceding claim, wherein the impingement channel axes are disposed at a non-zero angle relative to the film channel axes.
  10. 12
    The cooling arrangement of any preceding claim, wherein the impingement channel axes intersect the film plate or cooling portion (86) between the film channel entrances (98).
  11. 13
    The cooling arrangement of any preceding claim, wherein the turbine component is a blade outer air seal (58).
  12. 14
    A method of fragmenting particulate matter within a turbine component cooling system comprising:communicating a particulate through an impingement plate channel (74);and directing the particulate from the impingement plate channel (74) at portions of a film plate (86) between film channel entrances (98) established in the film plate (86).